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Preparation and Reactivity of Gasless Nanostructured Energetic Materials
Published on: April 2, 2015
Electron Shock Ignition of Inertial Fusion Targets
W L Shang1,2, R Betti1,2, S X Hu3
1Fusion Science Center and Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623, USA.
Abstract:
It is shown that inertial confinement fusion targets designed with low implosion velocities can be shock-ignited using laser-plasma interaction generated hot electrons (hot-e's) to obtain high energy gains. These designs are robust to multimode asymmetries and are predicted to ignite even for significantly distorted implosions. Electron shock ignition requires tens of kilojoules of hot-e's which can be produced only at a large laser facility like the National Ignition Facility, with the laser-to-hot-e conversion efficiency greater than 10% at laser intensities ∼10^{16} W/cm^{2}.
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